首页> 外文期刊>Journal of the American Chemical Society >Entropy Drives an Attached Water Molecule from the C- to N-Terminus on Protonated Proline
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Entropy Drives an Attached Water Molecule from the C- to N-Terminus on Protonated Proline

机译:熵从质子化脯氨酸的C端到N端驱动附着的水分子

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Results from infrared photodissociation (IRPD) spectroscopy and kinetics of singly hydrated, protonated proline indicate that the water molecule hydrogen bonds preferentially to the formally neutral carboxylic acid at low temperatures and at higher temperatures to the protonated N-terminus, which bears the formal charge. Hydration isomer populations obtained from IRPD kinetic data as a function of temperature are used to generate a van’t Hoff plot that reveals that C-terminal binding is enthalpically favored by 4.2−6.4 kJ/mol, whereas N-terminal binding is entropically favored by 31−43 J/(mol K), consistent with a higher calculated barrier for water molecule rotation at the C-terminus.
机译:红外光解离(IRPD)光谱和单水合质子化脯氨酸动力学的结果表明,在低温和更高温度下,水分子氢优先与形式上中性的羧酸键合到质子化的N端,后者带有形式电荷。从IRPD动力学数据获得的水合异构体种群随温度的变化被用于生成van't Hoff图,该图表明C-端结合在焓上受到4.2-6.4 kJ / mol的偏爱,而N端结合在熵上受到了熵的偏爱。 31-43 J /(mol K),与在C端计算出的更高的水分子旋转势垒相一致。

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